mirror of
https://github.com/k3s-io/k3s.git
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161 lines
5.5 KiB
Go
161 lines
5.5 KiB
Go
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/*
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Copyright The ocicrypt Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package blockcipher
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import (
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"io"
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"github.com/opencontainers/go-digest"
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"github.com/pkg/errors"
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)
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// LayerCipherType is the ciphertype as specified in the layer metadata
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type LayerCipherType string
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// TODO: Should be obtained from OCI spec once included
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const (
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AES256CTR LayerCipherType = "AES_256_CTR_HMAC_SHA256"
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)
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// PrivateLayerBlockCipherOptions includes the information required to encrypt/decrypt
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// an image which are sensitive and should not be in plaintext
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type PrivateLayerBlockCipherOptions struct {
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// SymmetricKey represents the symmetric key used for encryption/decryption
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// This field should be populated by Encrypt/Decrypt calls
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SymmetricKey []byte `json:"symkey"`
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// Digest is the digest of the original data for verification.
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// This is NOT populated by Encrypt/Decrypt calls
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Digest digest.Digest `json:"digest"`
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// CipherOptions contains the cipher metadata used for encryption/decryption
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// This field should be populated by Encrypt/Decrypt calls
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CipherOptions map[string][]byte `json:"cipheroptions"`
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}
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// PublicLayerBlockCipherOptions includes the information required to encrypt/decrypt
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// an image which are public and can be deduplicated in plaintext across multiple
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// recipients
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type PublicLayerBlockCipherOptions struct {
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// CipherType denotes the cipher type according to the list of OCI suppported
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// cipher types.
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CipherType LayerCipherType `json:"cipher"`
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// Hmac contains the hmac string to help verify encryption
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Hmac []byte `json:"hmac"`
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// CipherOptions contains the cipher metadata used for encryption/decryption
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// This field should be populated by Encrypt/Decrypt calls
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CipherOptions map[string][]byte `json:"cipheroptions"`
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}
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// LayerBlockCipherOptions contains the public and private LayerBlockCipherOptions
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// required to encrypt/decrypt an image
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type LayerBlockCipherOptions struct {
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Public PublicLayerBlockCipherOptions
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Private PrivateLayerBlockCipherOptions
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}
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// LayerBlockCipher returns a provider for encrypt/decrypt functionality
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// for handling the layer data for a specific algorithm
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type LayerBlockCipher interface {
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// GenerateKey creates a symmetric key
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GenerateKey() ([]byte, error)
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// Encrypt takes in layer data and returns the ciphertext and relevant LayerBlockCipherOptions
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Encrypt(layerDataReader io.Reader, opt LayerBlockCipherOptions) (io.Reader, Finalizer, error)
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// Decrypt takes in layer ciphertext data and returns the plaintext and relevant LayerBlockCipherOptions
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Decrypt(layerDataReader io.Reader, opt LayerBlockCipherOptions) (io.Reader, LayerBlockCipherOptions, error)
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}
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// LayerBlockCipherHandler is the handler for encrypt/decrypt for layers
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type LayerBlockCipherHandler struct {
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cipherMap map[LayerCipherType]LayerBlockCipher
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}
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// Finalizer is called after data blobs are written, and returns the LayerBlockCipherOptions for the encrypted blob
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type Finalizer func() (LayerBlockCipherOptions, error)
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// GetOpt returns the value of the cipher option and if the option exists
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func (lbco LayerBlockCipherOptions) GetOpt(key string) (value []byte, ok bool) {
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if v, ok := lbco.Public.CipherOptions[key]; ok {
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return v, ok
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} else if v, ok := lbco.Private.CipherOptions[key]; ok {
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return v, ok
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} else {
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return nil, false
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}
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}
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func wrapFinalizerWithType(fin Finalizer, typ LayerCipherType) Finalizer {
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return func() (LayerBlockCipherOptions, error) {
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lbco, err := fin()
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if err != nil {
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return LayerBlockCipherOptions{}, err
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}
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lbco.Public.CipherType = typ
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return lbco, err
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}
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}
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// Encrypt is the handler for the layer decryption routine
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func (h *LayerBlockCipherHandler) Encrypt(plainDataReader io.Reader, typ LayerCipherType) (io.Reader, Finalizer, error) {
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if c, ok := h.cipherMap[typ]; ok {
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sk, err := c.GenerateKey()
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if err != nil {
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return nil, nil, err
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}
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opt := LayerBlockCipherOptions{
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Private: PrivateLayerBlockCipherOptions{
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SymmetricKey: sk,
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},
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}
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encDataReader, fin, err := c.Encrypt(plainDataReader, opt)
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if err == nil {
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fin = wrapFinalizerWithType(fin, typ)
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}
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return encDataReader, fin, err
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}
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return nil, nil, errors.Errorf("unsupported cipher type: %s", typ)
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}
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// Decrypt is the handler for the layer decryption routine
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func (h *LayerBlockCipherHandler) Decrypt(encDataReader io.Reader, opt LayerBlockCipherOptions) (io.Reader, LayerBlockCipherOptions, error) {
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typ := opt.Public.CipherType
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if typ == "" {
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return nil, LayerBlockCipherOptions{}, errors.New("no cipher type provided")
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}
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if c, ok := h.cipherMap[LayerCipherType(typ)]; ok {
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return c.Decrypt(encDataReader, opt)
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}
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return nil, LayerBlockCipherOptions{}, errors.Errorf("unsupported cipher type: %s", typ)
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}
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// NewLayerBlockCipherHandler returns a new default handler
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func NewLayerBlockCipherHandler() (*LayerBlockCipherHandler, error) {
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h := LayerBlockCipherHandler{
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cipherMap: map[LayerCipherType]LayerBlockCipher{},
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}
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var err error
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h.cipherMap[AES256CTR], err = NewAESCTRLayerBlockCipher(256)
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if err != nil {
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return nil, errors.Wrap(err, "unable to set up Cipher AES-256-CTR")
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}
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return &h, nil
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}
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